Industrial fuel gas for metal cutting and welding
A technology for industrial gas and petroleum liquefied gas, applied in the field of ether hydrocarbon gas, can solve problems such as unsatisfactory welding performance, and achieve the effects of saving labor hours, smooth cutting surface, and safe use
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Embodiment 1
[0035] Add 0.05Kg of liquefied petroleum gas into a steel cylinder, and then inject 49.95Kg of dimethyl ether to obtain an industrial gas product containing 99.9% of dimethyl ether and 0.1% of liquefied petroleum gas.
[0036] The dimethyl ether is made of methanol as a raw material, in the presence of a zeolite catalyst, a dehydration reaction is carried out at 200-400°C to produce crude dimethyl ether, which is then separated by rectification to obtain dimethyl ether.
Embodiment 2
[0038] Add 0.05Kg of butane and 0.05Kg of propylene into the steel cylinder in turn, and then inject 40Kg of dimethyl ether to obtain an industrial gas product containing 80% dimethyl ether, 10% butane, and 10% propylene.
[0039] The dimethyl ether is made of crude methanol as raw material. 2 O 3 When the catalyst is present, the dehydration reaction is carried out at 200-400°C to produce crude dimethyl ether, which is separated by rectification to obtain dimethyl ether.
Embodiment 3
[0041] Add 0.05Kg of liquefied petroleum gas and 0.10Kg of propane into the steel cylinder in turn, and then inject 35Kg of dimethyl ether to obtain an industrial gas product containing 70% of dimethyl ether, 10% of liquefied petroleum gas, and 20% of propane.
[0042] The dimethyl ether is made of methanol as raw material, and it is in γ-Al 2 O 3 When the catalyst is present, the dehydration reaction is carried out at 200-400°C to produce crude dimethyl ether, which is separated by rectification to obtain dimethyl ether.
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